The paper investigates the potential of auxetics in architectural applications by means of computational design and additive manufacturing. This class of metamaterials expresses interesting behaviour related to the unusual characteristics of a negative Poisson’s ratio. Different patterns have been studied through a design workflow based on parametric software and the use of Particle Spring systems to support the form-finding process of bending-active auxetic structures. An advanced understanding of their bending capacity is explored with the use of variable infill patterns informed by structural analysis. Furthermore, principles for the design and fabrication of auxetic gridshells are discussed.

Metamaterial computation and fabrication of auxetic patterns for architecture

NABONI, ROBERTO STEFANO;MIRANTE, LORENZO
2015-01-01

Abstract

The paper investigates the potential of auxetics in architectural applications by means of computational design and additive manufacturing. This class of metamaterials expresses interesting behaviour related to the unusual characteristics of a negative Poisson’s ratio. Different patterns have been studied through a design workflow based on parametric software and the use of Particle Spring systems to support the form-finding process of bending-active auxetic structures. An advanced understanding of their bending capacity is explored with the use of variable infill patterns informed by structural analysis. Furthermore, principles for the design and fabrication of auxetic gridshells are discussed.
2015
SIGRADI 2015: Informação de projeto para interação
978-85-8039-136-7
Auxetics, Computational Design, Form-Finding, Synclastic Shell, 3D-printing
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/978399
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